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KAUST team alters atomic composition of MoS2 to boost performance as water-splitting catalyst for H2 production

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Researchers at KAUST have developed and used a novel way of increasing the chemical reactivity of a two-dimensional molybdenum disulfide material to produce a cheap and effective catalyst for water splitting to produce hydrogen. A monolayer of molybdenum disulfide is only reactive for reducing water to hydrogen at its edge.

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New photoelectrode with enhanced visible light absorption for improved solar water-splitting for hydrogen production

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A team of researchers at Ulsan National Institute of Science and Technology (UNIST), Korea University, and the Korea Advanced Institute of Science and Technology (KAIST) has developed a new type of multilayered (Au NPs/TiO 2 /Au) photoelectrode that could boost the ability of solar water-splitting to produce hydrogen.

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BioSolar extends agreement with UCSB for further development of novel polymer cathode; projecting up to 459 Wh/kg and $54/kWh for Li-ion cells

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BioSolar’s research program with UCSB started in July 2014 with a focus on low-cost and high performance materials and structures for supercapacitors and batteries. High energy, low cost. High energy, low cost, rapid charge. Thermal safety, low cost, rapid charge. Startup BioSolar, Inc.

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DOE to award $118M to 17 projects to accelerate domestic biofuel production

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and the National High Magnetic Field Laboratory (the MagLab) at Florida State University (FSU) will leverage existing capabilities to develop and demonstrate an integrated process to convert preprocessed corn stover into SAF through a catalytic fast pyrolysis (CFP), biocrude intermediate upgrading pathway. MicroBio Engineering Inc.,

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Researchers report cost-effective synthesis of NiFe-layered double hydroxides nanosheets as efficient OER catalyst

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A team from Brown University and Lakehead University (Canada) have developed a method for the facile and cost-effective synthesis of NiFe-layered double hydroxides (LDH) nanosheets to serve as efficient catalyst for the oxygen evolution reaction in an alkaline environment. 2015.11.004.

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GWU research team C2CNT advances to the final round of the Carbon XPRIZE; CO2 to carbon nanotubes

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Stuart Licht, a chemistry professor at the George Washington University, and his team of researchers are among the finalists announced today in the $20-million Carbon XPRIZE competition. Illustration credit: Licht, from Scientific Reports at Nature.com, 6:27760, 2016. Click to enlarge.

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Researchers identify pentlandite as equally efficient alternative to platinum for hydrogen production

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According to their study, artificial pentlandite is just as efficient as the platinum electrodes commonly used today for the electrolytic production of hydrogen from water, but is lower cost. Thus, they can be hauled from natural deposits at low cost and used without major processing if sufficiently pure.

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